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Complex decay behaviour of fibre Bragg gratings: further evidence of three energy level system of photosensitivity in germanium-doped optical fibre

Complex decay behaviour of fibre Bragg gratings: further evidence of three energy level system of photosensitivity in germanium-doped optical fibre
Complex decay behaviour of fibre Bragg gratings: further evidence of three energy level system of photosensitivity in germanium-doped optical fibre
A complex grating decay process is observed at elevated temperatures as predicted by our recent proposed three energy level model. The thermal stability of positive and negative index gratings in a Boron-co-doped germanosilicate fibre is characterised, so that the stability of such grating can be accessed for any writing fluence.
1-55752-480-7
287-288
IEEE
Liu, W.F.
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Dong, L.
4a30a247-d676-42ef-aaf4-061579d6d64e
Reekie, L.
ec314137-6924-44ad-86a4-ff3f9a67c1b5
Payne, D.N.
4f592b24-707f-456e-b2c6-8a6f750e296d
Liu, W.F.
2aa5be46-280a-4aa7-9ffb-8557679d90f7
Dong, L.
4a30a247-d676-42ef-aaf4-061579d6d64e
Reekie, L.
ec314137-6924-44ad-86a4-ff3f9a67c1b5
Payne, D.N.
4f592b24-707f-456e-b2c6-8a6f750e296d

Liu, W.F., Dong, L., Reekie, L. and Payne, D.N. (1997) Complex decay behaviour of fibre Bragg gratings: further evidence of three energy level system of photosensitivity in germanium-doped optical fibre. In Proceedings of Optical Fiber Communication. IEEE. pp. 287-288 . (doi:10.1109/OFC.1997.719896).

Record type: Conference or Workshop Item (Paper)

Abstract

A complex grating decay process is observed at elevated temperatures as predicted by our recent proposed three energy level model. The thermal stability of positive and negative index gratings in a Boron-co-doped germanosilicate fibre is characterised, so that the stability of such grating can be accessed for any writing fluence.

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Published date: 1997
Venue - Dates: Optical Fiber Communication (OFC '970, Dallas, United States, 1997-02-16 - 1997-02-21

Identifiers

Local EPrints ID: 76828
URI: http://eprints.soton.ac.uk/id/eprint/76828
ISBN: 1-55752-480-7
PURE UUID: 9341e4e3-94f2-4359-8eae-b3482e9e983e

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Date deposited: 11 Mar 2010
Last modified: 13 Mar 2024 23:37

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Contributors

Author: W.F. Liu
Author: L. Dong
Author: L. Reekie
Author: D.N. Payne

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